METHOD AND APPARATUS FOR DISPENSING TEMPERATURE-ADJUSTED AUTOMOTIVE BODY SEALANT
20200398508 ยท 2020-12-24
Inventors
Cpc classification
B29C73/30
PERFORMING OPERATIONS; TRANSPORTING
B05C11/1047
PERFORMING OPERATIONS; TRANSPORTING
B60R13/08
PERFORMING OPERATIONS; TRANSPORTING
B05C5/0216
PERFORMING OPERATIONS; TRANSPORTING
B05C11/1042
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C73/16
PERFORMING OPERATIONS; TRANSPORTING
B05C11/10
PERFORMING OPERATIONS; TRANSPORTING
B29C73/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for dispensing temperature-automotive body sealant includes providing a dispensing system having a pump operable to pump the sealant and a manifold receiving the sealant and operable to temperature-adjust the sealant has an elongated central body and elongated passages extending from the first end to the second end. First and second end caps are detachably connected to ends of the central body. A thermal unit is in thermal communication with the elongated central body and operable to heat or cool the elongated central body. A dispenser is in fluid communication with the manifold and operable to dispense the temperature-adjusted sealant. Sealant is pumped through the manifold and heated or cooled so as to provide a temperature-adjusted sealant. The temperature-adjusted sealant is dispensed from the dispenser.
Claims
1. A method for dispensing temperature-automotive body sealant, comprising: providing a dispensing system, comprising; a pump operable to pump the sealant; a manifold receiving the sealant and operable to temperature-adjust the sealant as the sealant is pumped through the manifold, the manifold comprising; an elongated central body having a first end and a second end with a longitudinal axis defined therebetween, a plurality of elongated passages defined generally longitudinally through the elongated central body, each of the elongated passages extending from the first end to the second end of the elongated central body; a first end cap detachably connected to the first end of the elongated central body, the first end cap having an inlet opening for receiving sealant, the first end cap further defining an inlet chamber in fluid communication with the inlet opening, the inlet chamber sized and configured so as to be in fluid communication with all of the plurality of elongated passages; a second end cap detachably connected to the second end of the elongated central body, the second end cap having an outlet opening for sealant to flow from the manifold, the second end cap further defining an outlet chamber in fluid communication with the outlet opening, the outlet chamber sized and configured so as to be in fluid communication with all of the plurality of elongated passages; at least one thermal unit in thermal communication with the elongated central body and operable to heat or cool the elongated central body; and a dispenser in fluid communication with the manifold and operable to dispense the temperature-adjusted sealant; pumping sealant through the manifold; heating or cooling the sealant in the manifold so as to provide a temperature-adjusted sealant; and dispensing the temperature-adjusted sealant from the dispenser.
2. The method of claim 1, further comprising: cleaning the manifold, comprising the steps of; detaching the first and second end caps from the elongated central body to expose the first and second ends of the plurality of elongated passages; cleaning the plurality of elongated passages and the caps of sealant; and reattaching the first and second end caps to the elongated central body.
3. The method of claim 1, wherein the at least one thermal unit comprises at least one thermoelectric unit, each thermoelectric unit being disposed adjacent a side of the elongated central body, each thermoelectric unit being operable to heat the elongated central body in a heating mode and cool the elongated central body in a cooling mode.
4. The method of claim 1, wherein the plurality of elongated passages each has a constant round cross section.
5. The method of claim 1, wherein the chamber of each end cap is flared outwardly from the respective opening to a mating face of the end cap, the mating face being received against the respective end of the elongated central body.
6. The method of claim 1, wherein the elongated central body comprises a first and a second elongated body, the first end of the second elongated body being connected to the second end of the first elongated body and the second cap being connected to the second end of the second elongated body.
7. The method of claim 1, wherein the automotive body sealant is under-body coating (UBC), seam sealer, PVC sealer, anti-chip coating, or acoustic damping or absorbent material.
8. The method of claim 1, wherein the manifold further comprises at least one temperature sensor in communication with a temperature control unit operable to control a temperature of the sealant flowing through the elongated central body, the method further comprises controlling the temperature of the sealant.
9. The method of claim 1, wherein the manifold further comprises turbulators removably disposed in the elongated passages.
10. A dispensing system for automotive body sealant, comprising: a pump operable to pump the sealant; a manifold receiving the sealant and operable to temperature-adjust the sealant as the sealant is pumped through the manifold, the manifold comprising; an elongated central body having a first end and a second end with a longitudinal axis defined therebetween, a plurality of elongated passages defined generally longitudinally through the elongated central body, each of the elongated passages extending from the first end to the second end of the elongated central body; a first end cap detachably connected to the first end of the elongated central body, the first end cap having an inlet opening for receiving sealant, the first end cap further defining an inlet chamber in fluid communication with the inlet opening, the inlet chamber sized and configured so as to be in fluid communication with all of the plurality of elongated passages; a second end cap detachably connected to the second end of the elongated central body, the second end cap having an outlet opening for sealant to flow from the manifold, the second end cap further defining an outlet chamber in fluid communication with the outlet opening, the outlet chamber sized and configured so as to be in fluid communication with all of the plurality of elongated passages; at least one thermal unit in thermal communication with the elongated central body and operable to heat or cool the elongated central body; and a dispenser in fluid communication with the manifold and operable to dispense the temperature-adjusted sealant.
11. The dispensing system of claim 10, wherein the at least one thermal unit comprises a pair of thermoelectric units, each thermoelectric unit being disposed adjacent a side of the elongated central body, each thermoelectric unit being operable to heat the elongated central body in a heating mode and cool the elongated central body in a cooling mode.
12. The dispensing system of claim 10, wherein the plurality of elongated passages each has a constant round cross section.
13. The dispensing system of claim 10, wherein the chamber of each end cap is flared outwardly from the respective opening to a mating face of the end cap, the mating face being received against the respective end of the elongated central body.
14. The dispensing system of claim 10, wherein the elongated central body comprises a first and a second elongated body, the first end of the second elongated body being connected to the second end of the first elongated body and the second cap being connected to the second end of the second elongated body.
15. The dispensing system of claim 10, wherein the manifold further comprises at least one temperature sensors in communication with a temperature control unit operable to control a temperature of the sealant flowing through the elongated central body.
16. The dispensing system of claim 10, wherein the manifold further comprises turbulators removably disposed in the elongated passages.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION OF THE INVENTION
[0028] The present invention provides methods and apparatus for dispensing temperature-adjusted automotive body sealant. Such a system 10 may be schematically represented as shown in
[0029] As known to those of skill in the art, manufacturing facilities themselves may not be temperature-controlled and therefore the ambient temperature in such a facility may be a normal room temperature or may be higher or lower, depending on the season and conditions. Certain automotive body sealants are designed to be dispensed at particular temperatures or temperature ranges so as to perform as desired. As such, the automotive body sealants may require heating or cooling so as to be dispensed at an appropriate temperature. Referring again to
[0030] In certain embodiments of the present invention, the manifold takes the form of an elongated central body with removable end caps that allow for easy and efficient cleaning of the passages in the manifold. The manifold further includes at least one thermal unit for heating or cooling the elongated body such that sealant pumped through the manifold is heated or cooled to a desired temperature.
[0031] Referring to
[0032] The manifold 100 further includes at least one thermal unit 120 in thermal communication with the elongated central body 106, operable to heat or cool the elongated central body. In the illustrated embodiment, two substantially identical thermal units 120 and 122 are attached to opposing side faces of the elongated central body 106.
[0033] Referring now to
[0034] The elongated central body 106 has a plurality of elongated passages 150 defined longitudinally from the first end 108 to the second end 110. In the illustrated embodiment, there are seven parallel and equally sized passages 150.
[0035] Referring again to
[0036]
[0037] As shown in
[0038] In an alternative embodiment, two or more elongated central bodies 106 may be joined end to end to provide a longer manifold, thereby allowing more heating or cooling.
[0039] Embodiments of the present invention provide a method for dispensing temperature-adjusted automotive body sealant, including the steps of providing the dispensing system with a supply for automotive body sealant and a pump operable to pump the sealant. As mentioned earlier, the pump may take the form of a pump that draws from the supply or that pressurizes the supply so as to force sealant out of the supply. A manifold, such as discussed above, is attached to the pump and is operable to temperature-adjust the sealant as the sealant is pumped through the manifold. A dispenser is in fluid communication with the manifold and operable to dispense the temperature-adjusted sealant. The method includes pumping sealant from the supply to the manifold, heating or cooling the sealant in the manifold to adjust the temperature of the sealant, and dispensing the temperature-adjusted sealant from the dispenser. In further embodiments, a cleaning method is provided which includes cleaning the manifold by detaching the first and second end caps from the elongated central body to expose the first and second ends of the plurality of elongated passages. In embodiments including a turbulator assembly, the turbulators 180 are then removed from the passages 150. With the end caps and turbulators removed, the passages may be easily cleaned by passing a rod or other cleaning device through each of the passages. The end caps may also be easily cleaned since all surfaces are exposed and no dead-end passages are present. After cleaning, the turbulators, if used, are reinserted into the passages and the first and second end caps are reattached.
[0040] Certain embodiments of the dispensing system may further include a temperature control system for the manifold. A temperature sensor may be inserted into the opening 118 in the outlet end of the manifold, with the temperature sensor connected to a temperature control system operable to control the thermal unit or units, thereby adjusting the temperature of the sealant until a desired temperature is reached.
[0041] The foregoing detailed description has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit embodiments to the precise form disclosed. Many modifications and variations are possible in light of the above teaching. The described embodiments were chosen in order to explain principles and practical applications, to thereby enable others skilled in the art to best utilize various embodiments and with various modifications as are suited to the particular use contemplated. It is intended that the scope be defined by the claims appended hereto.